연안오염총량관리제는 지자체에 오염물질부하량을 할당하고, 오염부하 삭감뿐만 아니라 바람직한 지역발전에 있어서 아주 중 요하다. 본 연구에서는 광양만특별관리해역의 총량관리 도입에 앞서 해역으로 유입하는 오염물질의 유입부하와 광양만 해역의 수질상태 를 조사하였고, 현재 연안오염총량관리를 실시하고 있는 다른 해역의 장기적인 현황을 살펴보았으며, 수회에 걸쳐 광양만 특별관리해역 환경자문위원회의 의견을 수렴하였다. 그 결과, 광양만에도 총량관리의 필요성이 인정되었으나, 시행에 앞서 우선 COD, TN, TP, 중금속, PAHs의 지속적인 모니터링과 함께 총량관리 도입의 경제성과 효율성과 같은 타당성 검토가 이루어져야 할 것으로 판단되었다.
The TMDL (Total Maximum Daily Load) has been used to determine the water quality target. LDC (Load Duration Curve) based on hydrology has been used to support water quality assessments and development of TMDL. Also FDC (Flow Duration Curve) analysis can be used as a general indicator of hydrologic condition. The LDC is developed by multiplying FDC with the numeric water quality target of the factor for the pollutant of concern. Therefore, this study was to create LDC using the stream flow data and numeric water quality target of BOD and T-P in order to evaluate the pollutant load characterization by flow conditions in Heukcheon stream. When it is to be a high-flows condition, BOD and T-P are necessary to manage. BOD and T-P did not satisfy the numeric water quality target for both seasons (spring and summer). In order to meet the numeric water quality target in Heukcheon stream, management of non point source pollutant is much more important than that of point source pollutant control.
The objective of this study is to evaluate Flow-Pollutant load delivery ratio equations developed from rural watershed on main subwatersheds within Juam Lake. Two regression equations for BOD and three equations for T-P were evaluated on Bosung cheon, Dongbok cheon, Songgwang cheon, Naenam cheon, and Sinpyeon cheon. The results show that estimation of BOD delivery ratio using flow-delivery equation is reliable when relative composition of discharge load of pollutant sources of a watershed is similar to those of watershed where the equation developed. On the other hand, application of regression equation for T-P was feasible when the landuse pattern and relative composition of discharge load of pollutant sources of a watershed is similar to those of watershed where the equation developed.
The objective of this study is to provide pollutant loads delivery ratio for flow duration in Oenam-cheon watershed, which is upstream watershed of Juam Lake. To calculate the delivery ratio by flow duration, rating curves and discharge-loads curves using measured data were established, then Flow Duration Curve(FDC) and pollutant loads delivery ratio curves were constructed. The results show that the delivery ratios for BOD5 for abundant flow(Q95), ordinary flow(Q185), low flow(Q275), and drought flow(Q355) were 23.9, 12.7, 7.1, and 2.9%, respectively. The delivery ratios of same flow regime for T-N were 58.4, 31.2, 17.2 and 7.1%, respectively. While, the delivery ratios T-P were 17.3, 7.5, 3.4, and 1.1% respectively. In general, delivery ratio of high flow condition showed higher value due to the influence of nonpoint source pollution. Based on the study results, generalized equations were developed for delivery ratio and discharge per unit area, which could be used for ungaged watershed with similar pollution sources.
용담호의 주요 유입 지류를 대상으로 1998년 12월부터 1999년 10월까지 매월 1회 측정된 수질농도 자료와 1999년 6원 강우시 3차에 걸쳐 4시간 간격의 집중 수질 측정 자료를 이용하여 강우의 영향을 고려한 월별 가중 평균 농도를 산정하였다. 연중 오염물질 유입부하를 산정하기 위하여 10 mm 이상의 강우가 발생하였을 경우 유역의 표면유출 및 오염물질 농도가 심각하게 증가한다고 가정하고, 강우시 측정된 수질농도 측정치를 적용하였으며, 10 mm
This study was carried out to provide the basic information for the water quality management of the Sumjin River Basin. The Chooryeongchon stream watershed was selected and the parameters representing water quality were investigated from May 1999 to September 2002, periodically. Yearly mean runoff ratio to the rainfall amount of the watershed was analysed as 26.6~58.8%. Temporal variation of water quality constituents such as water temperature, pH, EC, total nitrogen, total phosphorus were analysed. The result showed that pH ranged 5.7~7.7, EC 54~167 μS/cm, COD 0.8~18.1 mg/L, respectively. Total-N and total-P concentration ranged from 0.89 to 5.19 mg/L and from 0.0004 to 0.030 mg/L, respectively. The relationships between runoff and mass load were derived and showed high linear relationships.
The objective of this study is understanding and evaluation of temporal and spatial variation of pollutant loads by input sources for water quality management in Kamak Bay.
Flow rate of rivers and ditches ranges from about 2,592-63,072㎥/d in October to 864-55,296㎥/d in January. In particular, the R2 predominated flow rate among input sources. Total COD, BOD, DIN and DIP loadings in January were about 896kg/d, 718kg/d, 2,152kg/d, and 154kg/d, respectively, which exceeded those of October. Lower POC/TOC levels are estimated in R2, and also in October. Temporal variation of pollutant loads were closely related to the human activity.
Total discharging loadings of BOD, TN and TP by unit loading estimation were 4,993.0kg/d, 2,558.7kg/d, and 289.2kg/d, respectively, and were mainly affected by the population. Runoff ratio of BOD was about 0.14 in January. Mean NH4+-N and PO43--P loadings from sediment were 16.23㎎/㎡/d and 7.26㎎/㎡/d, respectively.
For the improvement of water quality in this area, not only pollutant loads of rivers and ditches but also benthic flux from sediment should be reduced within the limits of the environmental capacity.
댐저수지 유역의 오염부하 특성 조사를 위하여 강우기와 비강우기로 나누어 섬진강댐 저수지 상류 유입하천에 대한 수질조사를 실시하였다. 비강우기시에 조사된 각 조사 지점의 수질항목별 농도는 상대적으로 인구와 가축 등 오염원이 많은 용산교 지점에서 가장 높게 나타났다. 강수시 유출부하는 매번 조사 시점에 따라 다르게 나타나며 강우량과 강우강도 그리고 선행강우상태 등에 따라서도 다르게 나타난다. 1998년과 1999년에 조사된 자료에서 수질변화를 살펴본면 조사